首页> 美国卫生研究院文献>Clinical Cardiology >Effect of remote ischemic preconditioning on electrophysiological and biomolecular parameters in nonvalvular paroxysmal atrial fibrillation (RIPPAF study): Rationale and study design of a randomized controlled clinical trial
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Effect of remote ischemic preconditioning on electrophysiological and biomolecular parameters in nonvalvular paroxysmal atrial fibrillation (RIPPAF study): Rationale and study design of a randomized controlled clinical trial

机译:远程缺血预处理对非瓣膜性阵发性心房颤动电生理和生物分子参数的影响(RIPPAF研究):一项随机对照临床试验的原理和研究设计

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摘要

Remote ischemic preconditioning (RIPC) has been studied in models of different cardiovascular entities. Recently, a beneficial effect of RIPC on incidence of atrial fibrillation (AF) in postsurgical patients has been suggested. However, the potential impact of RIPC on electrophysiological‐ and thrombogenesis‐related parameters in the setting of paroxysmal nonvalvular AF has not been investigated. The aim of the study is to answer the following questions: (1) Does RIPC have impact on inducibility of AF in patients with known paroxysmal AF? If yes, what are the direct electrophysiological mechanisms of this phenomenon, and could RIPC be implemented to reduce AF burden? (2) Does RIPC have the potential to minimize thrombogenic effects of simulated episodes of AF? If so, what are inhibited components of thrombogenesis and can this be used to reduce thromboembolic risk related to paroxysmal AF? The presented study is a 2‐arm, randomized, placebo‐controlled, double‐blinded, single‐center trial in a cohort of 146 patients with paroxysmal AF referred for AF ablation in sinus rhythm. The study will collect electrophysiological data such as variability of P‐wave morphology, atrial refractory period, conduction times, and inducibility/sustainability of AF. Furthermore, style="fixed-case">AF‐induced prothrombotic processes will be analyzed by quantification of platelet aggregates, analysis of platelet function, and measurement of thrombogenesis‐related plasma markers. Moreover, the study will provide a unique bio‐database for further analysis of molecular and genetic mechanisms responsible for observed results.
机译:已经在不同心血管实体的模型中研究了远程缺血预处理(RIPC)。最近,已经提出了RIPC对术后患者心房颤动(AF)发生率的有益作用。但是,尚未研究RIPC对阵发性非瓣膜性AF的电生理和血栓形成相关参数的潜在影响。该研究的目的是回答以下问题:(1)RIPC是否对已知阵发性房颤患者的房颤诱发性有影响?如果是,此现象的直接电生理机制是什么?是否可以实施RIPC减轻房颤负担? (2)RIPC是否有潜力使模拟房颤的血栓形成作用最小化?如果是这样,什么是抑制血栓形成的成分,可以用来减少与阵发性房颤相关的血栓栓塞风险吗?这项研究是一项2臂,随机,安慰剂对照,双盲,单中心试验,共纳入146例阵发性房颤患者,以窦性心律进行房颤消融。这项研究将收集电生理数据,例如P波形态的变异性,心房不应期,传导时间以及房颤的诱导性/可持续性。此外,还将通过量化血小板聚集体,分析血小板功能以及测量与血栓形成相关的血浆标志物来分析 style =“ fixed-case”> AF 诱发的血栓形成过程。此外,该研究将提供一个独特的生物数据库,用于进一步分析负责观察结果的分子和遗传机制。

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